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首页> 外文期刊>Plant and Soil >Relationships Between Climatic Variables and Sap Flow, Stem Water Potential and Maximum Daily Trunk Shrinkage in Lemon Trees
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Relationships Between Climatic Variables and Sap Flow, Stem Water Potential and Maximum Daily Trunk Shrinkage in Lemon Trees

机译:气候变量与柠檬树汁液流量,干水势和树干日最大干缩之间的关系

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摘要

The feasibility of obtaining sap flow (SF), maximum daily trunk shrinkage (MDS) and midday stem water potential (Ψstem) baselines or reference values for use in irrigation scheduling was studied in adult Fino lemon trees (Citrus limon (L.) Burm. fil.) grafted on sour orange (C. aurantium L.) rootstocks. Plants were irrigated daily above their water requirements in order to obtain non-limiting soil water conditions. The results indicated that baselines for plant-based water status indicators (MDS, SFand Ψstem) can be obtained, even though there was a certain scattering of the data points representing the relations between the plant-based measurements and the environmental variables (reference evapotranspiration, solar radiation, vapour pressure deficit and temperature). SF was more closely associated with changes in the studied evaporative demand variables than were MDS and Ψstem. SF and Ψstem were more closely correlated with changes in reference evapotranspiration (ETo) (r~2 0.93 and 0.79, respectively), while MDS behaviour was best correlated with mean daily air temperature (Tm) (r~2 0.76). Increases in the evaporative demand induced more negative Ψstem values and, as a consequence, SF increased, which, in turn, was translated into an increase in MDS. This confirmed that SF and MDS were very good predictors of the plant water status during the observation period and their continuous recording offers the promising possibility of their use in automatic irrigation scheduling in lemon trees.
机译:在成年的Fino柠檬树(柠檬柠檬)中研究了获得树液流量(SF),最大日树干收缩量(MDS)和午间茎水势(Ψstem)基线或参考值以用于灌溉计划的可行性。嫁接在酸橙(C. aurantium L.)砧木上。为了获得非限制性的土壤水分条件,每天要对植物进行高于其需水量的灌溉。结果表明,即使存在代表基于植物的测量值与环境变量之间的关系(参考蒸散量,参考蒸散量,太阳辐射,蒸气压不足和温度)。 SF与研究的蒸发需求变量的变化更紧密地相关,而不是MDS和Ψstem。 SF和Ψstem与参考蒸散量(ETo)的变化更密切相关(分别为r〜2 0.93和0.79),而MDS行为与平均日气温(Tm)最佳相关(r〜2 0.76)。蒸发需求的增加引起更多的负干值,结果,SF增加,这又转化为MDS的增加。这证实了SF和MDS是观察期内植物水分状况的很好的预测指标,并且它们的连续记录提供了将其用于柠檬树自动灌溉计划中的有希望的可能性。

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